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6-羟基多巴胺诱导的蛛网膜下腔外部颗粒细胞异位,覆盖小脑。III. 异位小脑神经元的形态学和突触组织:扫描和透射电子显微镜研究。

6-OHDA-induced ectopia of external granule cells in the subarachnoid space covering the cerebellum. III. Morphology and synaptic organization of ectopic cerebellar neurons: a scanning and transmission electron microscopic study.

作者信息

Sievers J, Mangold U, Berry M

出版信息

J Comp Neurol. 1985 Feb 15;232(3):319-30. doi: 10.1002/cne.902320305.

Abstract

The present report describes the ultrastructure, surface morphology, and synaptic connectivity of ectopically placed cerebellar neurons after treatment of newborn rats with 100 micrograms 6-hydroxydopamine (6-OHDA), administered intracisternally. In addition to granule cells which form the majority of ectopic neurons, neurons exhibiting the ultrastructure of basket/stellate cells are found in the subarachnoid space over the cerebellum. The ectopic neurons present an almost complete spectrum of homologous efferent and afferent connections. Parallel fiber synapses are found on thorns of spiny branchlets of Purkinje cell dendrites which also have grown out into the subarachnoid space, and on the somata and dendrites of basket/stellate cells. Many ectopic parallel fibers are seen to pass into the molecular layer of the underlying cerebellar cortex through defects in the pial surface, presumably connecting with intracortical postsynaptic partners. Synapses between ectopic Purkinje cell dendrites and basket/stellate cell axons are also observed; however, the source of these axons remains uncertain. Granule cell dendrites are engaged in glomeruli with mossy fibers. Moreover, ectopic granule cell colonies are densely innervated by noradrenergic fibers. Our results show that the technique of generating ectopia of external granule cells provides an additional model for investigating influences of epigenetic factors on the development of nerve cells.

摘要

本报告描述了新生大鼠经脑池内注射100微克6-羟基多巴胺(6-OHDA)处理后,异位放置的小脑神经元的超微结构、表面形态和突触连接。除了构成异位神经元大多数的颗粒细胞外,在小脑蛛网膜下腔还发现了具有篮状/星状细胞超微结构的神经元。异位神经元呈现出几乎完整的同源传出和传入连接谱。在也已生长到蛛网膜下腔的浦肯野细胞树突棘状小分支的刺上,以及在篮状/星状细胞的胞体和树突上发现了平行纤维突触。许多异位平行纤维被观察到通过软膜表面的缺陷进入下方小脑皮质的分子层,推测与皮质内的突触后伙伴相连。还观察到异位浦肯野细胞树突与篮状/星状细胞轴突之间的突触;然而,这些轴突的来源仍不确定。颗粒细胞树突与苔藓纤维参与形成小球。此外,异位颗粒细胞集落被去甲肾上腺素能纤维密集支配。我们的结果表明,产生外颗粒细胞异位的技术为研究表观遗传因素对神经细胞发育的影响提供了一个额外的模型。

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